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首页> 外文期刊>Journal of Biotechnology >Optimization of high solids fed-batch saccharification of sugarcane bagasse based on system viscosity changes
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Optimization of high solids fed-batch saccharification of sugarcane bagasse based on system viscosity changes

机译:基于系统粘度变化的甘蔗渣高固体分批补糖糖化工艺优化

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Viscosity trends in alkali-pretreated sugarcane bagasse (SCB) slurries undergoing high solids fed-batch enzymatic hydrolysis were measured for a range of solids loading from 15% to 36%. Solids liquefaction times were related to system viscosity changes. The viscosity decreased quickly for low solids loading, and increased with increasing solids content. Fed-batch hydrolysis was initiated with 15% solids loading, and an additional 8%, 7% and 6% were successively added after the system viscosity decreased to stable values to achieve a final solids content of 36%. Two enzyme-adding modes with 8.5 FPU/g solid were investigated. The batch mode with all enzyme being added at the beginning of the reaction produced the highest yields, with approximately 231.7 g/L total sugars and 134.9 g/L glucose being obtained after 96 h with nearly 60% of the final glucan conversion rate. This finding indicates that under the right conditions, the fed-batch strategy might be a plausible way to produce high sugars under high solids. (C) 2015 Elsevier B.V. All rights reserved.
机译:在固体负载量为15%至36%的范围内,测量了经过高固体分批补料分批酶解的碱预处理甘蔗渣(SCB)浆液的粘度趋势。固体液化时间与系统粘度变化有关。对于低固体含量,粘度迅速降低,并随着固体含量的增加而增加。补料分批水解以15%的固体含量开始,并且在系统粘度降低至稳定值以达到36%的最终固体含量后,依次添加8%,7%和6%。研究了两种以8.5 FPU / g固体添加酶的方式。在反应开始时添加所有酶的分批模式产生了最高的收率,在96小时后获得了约231.7 g / L的总糖和134.9 g / L的葡萄糖,最终葡聚糖转化率接近60%。这一发现表明,在正确的条件下,补料分批策略可能是在高固体含量下生产高糖的可行方法。 (C)2015 Elsevier B.V.保留所有权利。

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